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首页> 外文期刊>Angewandte Chemie >Enhanced Electron Penetration through an Ultrathin Graphene Layer for Highly Efficient Catalysis of the Hydrogen Evolution Reaction
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Enhanced Electron Penetration through an Ultrathin Graphene Layer for Highly Efficient Catalysis of the Hydrogen Evolution Reaction

机译:通过超薄石墨烯层增强的电子渗透性,可高效催化氢气释放反应

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摘要

Major challenges encountered when trying to replace precious-metal-based electrocatalysts of the hydrogen evolution reaction (HER) in acidic media are related to the low efficiency and stability of non-precious-metal compounds. Therefore, new concepts and strategies have to be devised to develop electrocatalysts that are based on earth-abundant materials. Herein, we report a hierarchical architecture that consists of ultrathin graphene shells (only 1-3 layers) that encapsulate a uniform CoNi nanoalloy to enhance its HER performance in acidic media. The optimized catalyst exhibits high stability and activity with an onset overpotential of almost zero versus the reversible hydrogen electrode (RHE) and an overpotential of only 142 mV at 10 mAcm(-2), which is quite close to that of commercial 40% Pt/C catalysts. Density functional theory (DFT) calculations indicate that the ultrathin graphene shells strongly promote electron penetration from the CoNi nanoalloy to the graphene surface. With nitrogen dopants, they synergistically increase the electron density on the graphene surface, which results in superior HER activity on the graphene shells.
机译:试图在酸性介质中替代氢释放反应(HER)的贵金属基电催化剂时遇到的主要挑战与非贵金属化合物的低效率和稳定性有关。因此,必须设计新的概念和策略来开发基于富含地球的材料的电催化剂。在本文中,我们报告了一种分层结构,该结构由超薄石墨烯壳(仅1-3层)组成,该壳封装了均匀的CoNi纳米合金以增强其在酸性介质中的HER性能。经过优化的催化剂具有很高的稳定性和活性,与可逆氢电极(RHE)相比,其起始超电势几乎为零,在10 mAcm(-2)时的超电势仅为142 mV,这非常接近于商用40%Pt / C催化剂。密度泛函理论(DFT)计算表明,超薄石墨烯壳强烈促进电子从CoNi纳米合金渗透到石墨烯表面。使用氮掺杂剂,它们可以协同增加石墨烯表面上的电子密度,从而在石墨烯壳层上具有出色的HER活性。

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